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Highest occupied molecular orbital splitting

Conjugated polymers are generally poor conductors unless they have been doped (oxidized or reduced) to generate mobile charge carriers. This can be explained by the schematic band diagrams shown in Fig. I.23 Polymerization causes the highest occupied molecular orbital (HOMO) and the lowest unoccupied molecular orbital (LUMO) of the monomer to split into n and n bands. In solid-state terminology these are the valence and conduction bands, respectively. In the neutral forms shown in Structures 1-4, the valence band is filled, the conduction band is empty, and the band gap (Eg) is typically 2-3 eV.24 There is therefore little intrinsic conductivity. [Pg.551]

The features in Figure 15.2 are believed to be due to electron transitions from the highest occupied molecular orbital states to lowest unoccupied molecular orbital states (HOMO-LUMO). Specifically, for single molecules and dilute solutions, the absorption in the blue part of the spectrum is proposed to be caused by the aromatic structure of TNT [4], probably involving it to it transitions.1 In the solid state, where the molecules are stacked up on top of each other, interactions between the molecules occur causing the energy levels to split into higher... [Pg.305]

Figure 15 depicts the splittings of the central metal d-orbitals for (a) an octahedral and a distorted octahedral compound and for (b) a square planar and a distorted square planar compound. For this model discussion, one 7i -orbital is introduced to represent the lowest unoccupied molecular orbital (LUMO). In these simplified schemes, other unoccupied 7i -orbitals and occupied 7i-orbitals are neglected for clarity. Thus, all considered electronic states are MLCT states with a central metal d-orbital as highest occupied molecular orbital (HOMO). [Pg.226]

Another approach is to use Koopman s theorem and to estimate (in the context of a one-electron picture) the transfer integrals t for holes or electrons as half the splitting of the highest occupied molecular orbital (HOMO) or lowest unoccupied molecular orbital (LUMO) levels, respectively, in a system made of two chains in the neutral state. [Pg.10]

Discussion of splitting of degeneracy of highest occupied molecular orbitals. 2H(3,4) 0.773 ... [Pg.87]

Figure 24.7 Energy level splitting of orbitals in a conjugated polymer according to a molecular orbital theory (a) HOMO, and LUMO refer to highest occupied molecular orbital and lowest... Figure 24.7 Energy level splitting of orbitals in a conjugated polymer according to a molecular orbital theory (a) HOMO, and LUMO refer to highest occupied molecular orbital and lowest...
As seen for the octahedral splitting pattern in Figure 15.1, it is the highest occupied molecular orbital (HOMO), t2g, and the lowest unoccupied molecular orbital (LUMO), 2eg, which are the focus of our attention in the rest of this book. They are shown in 15.1 I. The energy gap between t2g and leg is a function of the ligand a donor strength... [Pg.405]


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Highest

Highest occupied molecular

Highest occupied molecular orbital

Molecular orbital occupied

Molecular orbitals highest occupied

Occupied molecular orbitals

Occupied orbital

Occupied orbitals

Orbit, splitting

Orbital splitting

Orbitals highest occupied

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